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Numerical Study of Graphite Foams Saturated with Phase Change Materials in Power System Thermal Management

机译:电力系统热管理中相变材料浸透石墨泡沫的数值研究

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The latent heat storage unit (LHSU) using phase change material (PCM) is a quite attractive passive thermal management technique. Graphite foam-PCMs composite are very useful especially in electronics cooling system for power system applications due to their high energy to weight ratio and thermal response rate. A numerical study is proposed to investigate and predict the thermal behavior and performance of the LHSU using foam-PCMs. A simulation program based on finite volume approach was developed to evaluate the thermal performance of the LHSU, and the enthalpy porosity method was used to analyze the phase change process of PCMs. A line-by-line solver based on tri-diagonal matrix algorithm has been used to iteratively solve algebraic equations. Several numerical investigations were made to study the impact of the key parameters: foam materials porosity and thermal conductivity, the HTF inlet temperature and mass flow rate, on system thermal behavior and performance during the charging mode. This study provides guidelines for PCM-foam system thermal performance and design in electronics cooling applications.
机译:使用相变材料(PCM)的潜热存储单元(LHSU)是一种非常有吸引力的被动热管理技术。石墨泡沫-PCM复合材料非常有用,特别是在电力系统应用的电子冷却系统中,因为它们具有高的能量重量比和热响应率。提出了一项数值研究,以研究和预测使用泡沫PCM的LHSU的热行为和性能。开发了基于有限体积方法的仿真程序,以评估LHSU的热性能,并采用焓孔隙率法分析PCM的相变过程。基于三对角矩阵算法的逐行求解器已被用于迭代求解代数方程。进行了一些数值研究,以研究以下关键参数的影响:泡沫材料的孔隙率和导热率,HTF入口温度和质量流率,对充电模式下系统的热性能和性能的影响。这项研究为PCM泡沫系统的热性能和电子冷却应用中的设计提供了指南。

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